首页> 外文会议>4th International Pipeline Conference, Sep 30-Oct 3, 2002, Calgary >RETROFITTING CRACK ARRESTORS ON A PIPELINE CONVERTED FROM LIQUID TO GAS SERVICE
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RETROFITTING CRACK ARRESTORS ON A PIPELINE CONVERTED FROM LIQUID TO GAS SERVICE

机译:改造从液化气到天然气服务的管道上的裂纹抑制器

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PPETRONET undertook to evaluate the conversion of two liquid pipelines designed and constructed under ASME B31.4 to gas service under ASME B31.8. In a liquid pipeline, a rupture will result in small length of pipe (3 m - 10 ft.) opening to release product and pressure. The same failure mechanism in a pipeline with gas service can be far more damaging. Under certain combinations of product, pressure, temperature and material, a rupture can result in a running fracture that can travel for miles. The releasing energy from the compressed gas can sustain the fracture mechanism until some barrier or material change can absorb the energy and allow the fracture to arrest. This can be the critical decision point in any planned service conversion. If the pipe material and operating conditions indicate that a running fracture may develop, then either the pipe has to be replaced or an arrest mechanism installed. The economics usually preclude pipe replacement so it becomes critical to develop a method of retrofitting suitable arrest units economically and safely. Clock Spring~R Crack Arrestors have proven to be an economical solution to this challenge. This paper presents a case study of the conversion of a 457 mm (18-inch) pipeline, designed and constructed in accordance with ASME B31.4 for liquid service, to gas operation under ASME B31.8. The pipeline is located in South Africa and is operated by PETRONET. The use of Clock Spring~R Crack Arrestors saved million dollars over pipe replacement and was a key issue in the economic justification of the conversion.
机译:PPETRONET承诺评估根据ASME B31.4设计和建造的两条液体管道到根据ASME B31.8的天然气服务的转换。在液体管道中,破裂将导致较短的管道长度(3 m-10英尺)打开以释放产品和压力。输气管道中的相同故障机制可能造成更大的破坏。在产品,压力,温度和材料的某些组合下,破裂会导致连续的破裂,并可能传播数英里。从压缩气体中释放出的能量可以维持压裂机制,直到某些屏障或材料变化可以吸收能量并允许压裂停止为止。这可能是任何计划的服务转换中的关键决策点。如果管道材料和工作条件表明可能会发生破裂,则必须更换管道或安装止动装置。经济学通常排除了更换管道的必要,因此,开发一种经济,安全地改装合适的制动装置的方法变得至关重要。事实证明,Clock Spring〜R裂纹消除器是应对这一挑战的经济解决方案。本文提供了一个案例研究,说明根据ASME B31.4为液体服务设计和建造的457毫米(18英寸)管道转换为根据ASME B31.8的天然气操作。该管道位于南非,由PETRONET运营。使用Clock Spring〜R避雷器可节省更换管道所需的数百万美元的费用,这是转换的经济依据中的关键问题。

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